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KSZ9563RNXI 数据表(PDF) 20 Page - Microchip Technology

部件名 KSZ9563RNXI
功能描述  3-Port Gigabit Ethernet Switch with RGMII/MII/RMII Interface and IEEE 1588v2
PDF  226 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

KSZ9563RNXI 数据表(HTML) 20 Page - Microchip Technology

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KSZ9563R
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 2017-2018 Microchip Technology Inc.
4.1.3
10BASE-T/Te TRANSCEIVER
When the AVDDH supply is 3.3V, the 10Mbps interface is 10BASE-T. When AVDDH is 2.5V, the 10BASE-T signal has
a reduced amplitude and is known as 10BASE-Te. 10BASE-Te is interoperable with 10BASE-T when Cat5 cable is
used.
4.1.3.1
10BASE-T/Te Transmit
The 10BASE-T/Te driver is incorporated with the 100BASE-TX driver to allow for transmission using the same magnet-
ics. They are internally wave-shaped and pre-emphasized into outputs with typical 2.5V amplitude for 10BASE-T, or
1.75V amplitude for 10BASE-Te. The harmonic contents are at least 27dB below the fundamental frequency when
driven by an all-ones Manchester-encoded signal.
4.1.3.2
10BASE-T/Te Receive
On the receive side, input buffers and level detecting squelch circuits are employed. A differential input receiver circuit
and a phase-locked loop (PLL) perform the decoding function.
The Manchester-encoded data stream is separated into clock signal and NRZ data. A squelch circuit rejects signals with
levels less than 400mV or with short pulse widths to prevent noise at the RXP1 or RXM1 input from falsely triggering
the decoder. When the input exceeds the squelch limit, the PLL locks onto the incoming signal and the device decodes
a data frame. The receiver clock is maintained active during idle periods in between data reception.
4.1.4
AUTO MDI/MDI-X
The automatic MDI/MDI-X feature, also known as auto crossover, eliminates the need to determine whether to use a
straight cable or a crossover cable between the device and its link partner. The auto-sense function detects the MDI/
MDI-X pair mapping from the link partner, and assigns the MDI/MDI-X pair mapping of the device accordingly. Table 4-
1 shows the device’s 10/100/1000 Mbps pin configuration assignments for MDI and MDI-X pin mapping.
Auto MDI/MDI-X is enabled by default. It can be disabled through the port control registers. If Auto MDI/MDI-X is dis-
abled, the port control register can also be used to select between MDI and MDI-X settings.
An isolation transformer with symmetrical transmit and receive data paths is recommended to support Auto MDI/MDI-X.
4.1.5
PAIR-SWAP, ALIGNMENT, AND POLARITY CHECK
In 1000BASE-T mode, the device:
• Detects incorrect channel order and automatically restores the pair order for the A and B pairs. This is also done
separately for the C and D pairs. Crossing of A or B pairs to C or D pairs is not corrected.
• Supports 50±10ns difference in propagation delay between pairs of channels in accordance with the IEEE 802.3
standard, and automatically corrects the data skew so the corrected four pairs of data symbols are synchronized.
Incorrect pair polarities of the differential signals are automatically corrected for all speeds.
4.1.6
WAVE SHAPING, SLEW-RATE CONTROL, AND PARTIAL RESPONSE
In communication systems, signal transmission encoding methods are used to provide the noise-shaping feature and
to minimize distortion and error in the transmission channel.
• For 1000BASE-T, a special partial-response signaling method is used to provide the bandwidth-limiting feature for
the transmission path.
• For 100BASE-TX, a simple slew-rate control method is used to minimize EMI.
TABLE 4-1:
MDI/MDI-X PIN DEFINITIONS
Pin (RJ45 pair)
MDI
MDI-X
1000BASE-T 100BASE-TX
10BASE-Te
1000BASE-T 100BASE-TX
10BASE-Te
TXRXxP/M_A (1,2)
A+/-TX+/-
TX+/-B+/-
RX+/-
RX+/-
TXRXxP/M_B (3,6)
B+/-
RX+/-
RX+/-
A+/-
TX+/-
TX+/-
TXRXxP/M_C (4,5)
C+/-
Not used
Not used
D+/-
Not used
Not used
TXRXxP/M_D (7,8)
D+/-
Not used
Not used
C+/-
Not used
Not used



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